cmd_mii.c 15 KB

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  1. /*
  2. * (C) Copyright 2001
  3. * Gerald Van Baren, Custom IDEAS, vanbaren@cideas.com
  4. *
  5. * See file CREDITS for list of people who contributed to this
  6. * project.
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License as
  10. * published by the Free Software Foundation; either version 2 of
  11. * the License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  21. * MA 02111-1307 USA
  22. */
  23. /*
  24. * MII Utilities
  25. */
  26. #include <common.h>
  27. #include <command.h>
  28. #if (CONFIG_COMMANDS & CFG_CMD_MII)
  29. #include <miiphy.h>
  30. #ifdef CONFIG_TERSE_MII
  31. /*
  32. * Display values from last command.
  33. */
  34. uint last_op;
  35. uint last_addr;
  36. uint last_data;
  37. uint last_reg;
  38. /*
  39. * MII device/info/read/write
  40. *
  41. * Syntax:
  42. * mii device {devname}
  43. * mii info {addr}
  44. * mii read {addr} {reg}
  45. * mii write {addr} {reg} {data}
  46. */
  47. int do_mii (cmd_tbl_t * cmdtp, int flag, int argc, char *argv[])
  48. {
  49. char op;
  50. unsigned char addr, reg;
  51. unsigned short data;
  52. int rcode = 0;
  53. char *devname;
  54. if (argc < 2) {
  55. printf ("Usage:\n%s\n", cmdtp->usage);
  56. return 1;
  57. }
  58. #if defined(CONFIG_8xx) || defined(CONFIG_MCF52x2)
  59. mii_init ();
  60. #endif
  61. /*
  62. * We use the last specified parameters, unless new ones are
  63. * entered.
  64. */
  65. op = last_op;
  66. addr = last_addr;
  67. data = last_data;
  68. reg = last_reg;
  69. if ((flag & CMD_FLAG_REPEAT) == 0) {
  70. op = argv[1][0];
  71. if (argc >= 3)
  72. addr = simple_strtoul (argv[2], NULL, 16);
  73. if (argc >= 4)
  74. reg = simple_strtoul (argv[3], NULL, 16);
  75. if (argc >= 5)
  76. data = simple_strtoul (argv[4], NULL, 16);
  77. }
  78. /* use current device */
  79. devname = miiphy_get_current_dev();
  80. /*
  81. * check device/read/write/list.
  82. */
  83. if (op == 'i') {
  84. unsigned char j, start, end;
  85. unsigned int oui;
  86. unsigned char model;
  87. unsigned char rev;
  88. /*
  89. * Look for any and all PHYs. Valid addresses are 0..31.
  90. */
  91. if (argc >= 3) {
  92. start = addr; end = addr + 1;
  93. } else {
  94. start = 0; end = 31;
  95. }
  96. for (j = start; j < end; j++) {
  97. if (miiphy_info (devname, j, &oui, &model, &rev) == 0) {
  98. printf ("PHY 0x%02X: "
  99. "OUI = 0x%04X, "
  100. "Model = 0x%02X, "
  101. "Rev = 0x%02X, "
  102. "%3dbaseT, %s\n",
  103. j, oui, model, rev,
  104. miiphy_speed (devname, j),
  105. (miiphy_duplex (devname, j) == FULL)
  106. ? "FDX" : "HDX");
  107. } else {
  108. puts ("Error reading info from the PHY\n");
  109. }
  110. }
  111. } else if (op == 'r') {
  112. if (miiphy_read (devname, addr, reg, &data) != 0) {
  113. puts ("Error reading from the PHY\n");
  114. rcode = 1;
  115. } else {
  116. printf ("%04X\n", data & 0x0000FFFF);
  117. }
  118. } else if (op == 'w') {
  119. if (miiphy_write (devname, addr, reg, data) != 0) {
  120. puts ("Error writing to the PHY\n");
  121. rcode = 1;
  122. }
  123. } else if (op == 'd') {
  124. if (argc == 2)
  125. miiphy_listdev ();
  126. else
  127. miiphy_set_current_dev (argv[2]);
  128. } else {
  129. printf ("Usage:\n%s\n", cmdtp->usage);
  130. return 1;
  131. }
  132. /*
  133. * Save the parameters for repeats.
  134. */
  135. last_op = op;
  136. last_addr = addr;
  137. last_data = data;
  138. last_reg = reg;
  139. return rcode;
  140. }
  141. /***************************************************/
  142. U_BOOT_CMD(
  143. mii, 5, 1, do_mii,
  144. "mii - MII utility commands\n",
  145. "device - list available devices\n"
  146. "mii device <devname> - set current device\n"
  147. "mii info <addr> - display MII PHY info\n"
  148. "mii read <addr> <reg> - read MII PHY <addr> register <reg>\n"
  149. "mii write <addr> <reg> <data> - write MII PHY <addr> register <reg>\n"
  150. );
  151. #else /* ! CONFIG_TERSE_MII ================================================= */
  152. typedef struct _MII_reg_desc_t {
  153. ushort regno;
  154. char * name;
  155. } MII_reg_desc_t;
  156. MII_reg_desc_t reg_0_5_desc_tbl[] = {
  157. { 0, "PHY control register" },
  158. { 1, "PHY status register" },
  159. { 2, "PHY ID 1 register" },
  160. { 3, "PHY ID 2 register" },
  161. { 4, "Autonegotiation advertisement register" },
  162. { 5, "Autonegotiation partner abilities register" },
  163. };
  164. typedef struct _MII_field_desc_t {
  165. ushort hi;
  166. ushort lo;
  167. ushort mask;
  168. char * name;
  169. } MII_field_desc_t;
  170. MII_field_desc_t reg_0_desc_tbl[] = {
  171. { 15, 15, 0x01, "reset" },
  172. { 14, 14, 0x01, "loopback" },
  173. { 13, 6, 0x81, "speed selection" }, /* special */
  174. { 12, 12, 0x01, "A/N enable" },
  175. { 11, 11, 0x01, "power-down" },
  176. { 10, 10, 0x01, "isolate" },
  177. { 9, 9, 0x01, "restart A/N" },
  178. { 8, 8, 0x01, "duplex" }, /* special */
  179. { 7, 7, 0x01, "collision test enable" },
  180. { 5, 0, 0x3f, "(reserved)" }
  181. };
  182. MII_field_desc_t reg_1_desc_tbl[] = {
  183. { 15, 15, 0x01, "100BASE-T4 able" },
  184. { 14, 14, 0x01, "100BASE-X full duplex able" },
  185. { 13, 13, 0x01, "100BASE-X half duplex able" },
  186. { 12, 12, 0x01, "10 Mbps full duplex able" },
  187. { 11, 11, 0x01, "10 Mbps half duplex able" },
  188. { 10, 10, 0x01, "100BASE-T2 full duplex able" },
  189. { 9, 9, 0x01, "100BASE-T2 half duplex able" },
  190. { 8, 8, 0x01, "extended status" },
  191. { 7, 7, 0x01, "(reserved)" },
  192. { 6, 6, 0x01, "MF preamble suppression" },
  193. { 5, 5, 0x01, "A/N complete" },
  194. { 4, 4, 0x01, "remote fault" },
  195. { 3, 3, 0x01, "A/N able" },
  196. { 2, 2, 0x01, "link status" },
  197. { 1, 1, 0x01, "jabber detect" },
  198. { 0, 0, 0x01, "extended capabilities" },
  199. };
  200. MII_field_desc_t reg_2_desc_tbl[] = {
  201. { 15, 0, 0xffff, "OUI portion" },
  202. };
  203. MII_field_desc_t reg_3_desc_tbl[] = {
  204. { 15, 10, 0x3f, "OUI portion" },
  205. { 9, 4, 0x3f, "manufacturer part number" },
  206. { 3, 0, 0x0f, "manufacturer rev. number" },
  207. };
  208. MII_field_desc_t reg_4_desc_tbl[] = {
  209. { 15, 15, 0x01, "next page able" },
  210. { 14, 14, 0x01, "reserved" },
  211. { 13, 13, 0x01, "remote fault" },
  212. { 12, 12, 0x01, "reserved" },
  213. { 11, 11, 0x01, "asymmetric pause" },
  214. { 10, 10, 0x01, "pause enable" },
  215. { 9, 9, 0x01, "100BASE-T4 able" },
  216. { 8, 8, 0x01, "100BASE-TX full duplex able" },
  217. { 7, 7, 0x01, "100BASE-TX able" },
  218. { 6, 6, 0x01, "10BASE-T full duplex able" },
  219. { 5, 5, 0x01, "10BASE-T able" },
  220. { 4, 0, 0x1f, "xxx to do" },
  221. };
  222. MII_field_desc_t reg_5_desc_tbl[] = {
  223. { 15, 15, 0x01, "next page able" },
  224. { 14, 14, 0x01, "acknowledge" },
  225. { 13, 13, 0x01, "remote fault" },
  226. { 12, 12, 0x01, "(reserved)" },
  227. { 11, 11, 0x01, "asymmetric pause able" },
  228. { 10, 10, 0x01, "pause able" },
  229. { 9, 9, 0x01, "100BASE-T4 able" },
  230. { 8, 8, 0x01, "100BASE-X full duplex able" },
  231. { 7, 7, 0x01, "100BASE-TX able" },
  232. { 6, 6, 0x01, "10BASE-T full duplex able" },
  233. { 5, 5, 0x01, "10BASE-T able" },
  234. { 4, 0, 0x1f, "xxx to do" },
  235. };
  236. #define DESC0LEN (sizeof(reg_0_desc_tbl)/sizeof(reg_0_desc_tbl[0]))
  237. #define DESC1LEN (sizeof(reg_1_desc_tbl)/sizeof(reg_1_desc_tbl[0]))
  238. #define DESC2LEN (sizeof(reg_2_desc_tbl)/sizeof(reg_2_desc_tbl[0]))
  239. #define DESC3LEN (sizeof(reg_3_desc_tbl)/sizeof(reg_3_desc_tbl[0]))
  240. #define DESC4LEN (sizeof(reg_4_desc_tbl)/sizeof(reg_4_desc_tbl[0]))
  241. #define DESC5LEN (sizeof(reg_5_desc_tbl)/sizeof(reg_5_desc_tbl[0]))
  242. typedef struct _MII_field_desc_and_len_t {
  243. MII_field_desc_t * pdesc;
  244. ushort len;
  245. } MII_field_desc_and_len_t;
  246. MII_field_desc_and_len_t desc_and_len_tbl[] = {
  247. { reg_0_desc_tbl, DESC0LEN },
  248. { reg_1_desc_tbl, DESC1LEN },
  249. { reg_2_desc_tbl, DESC2LEN },
  250. { reg_3_desc_tbl, DESC3LEN },
  251. { reg_4_desc_tbl, DESC4LEN },
  252. { reg_5_desc_tbl, DESC5LEN },
  253. };
  254. static void dump_reg(
  255. ushort regval,
  256. MII_reg_desc_t * prd,
  257. MII_field_desc_and_len_t * pdl);
  258. static int special_field(
  259. ushort regno,
  260. MII_field_desc_t * pdesc,
  261. ushort regval);
  262. void MII_dump_0_to_5(
  263. ushort regvals[6],
  264. uchar reglo,
  265. uchar reghi)
  266. {
  267. ulong i;
  268. for (i = 0; i < 6; i++) {
  269. if ((reglo <= i) && (i <= reghi))
  270. dump_reg(regvals[i], &reg_0_5_desc_tbl[i],
  271. &desc_and_len_tbl[i]);
  272. }
  273. }
  274. static void dump_reg(
  275. ushort regval,
  276. MII_reg_desc_t * prd,
  277. MII_field_desc_and_len_t * pdl)
  278. {
  279. ulong i;
  280. ushort mask_in_place;
  281. MII_field_desc_t * pdesc;
  282. printf("%u. (%04hx) -- %s --\n",
  283. prd->regno, regval, prd->name);
  284. for (i = 0; i < pdl->len; i++) {
  285. pdesc = &pdl->pdesc[i];
  286. mask_in_place = pdesc->mask << pdesc->lo;
  287. printf(" (%04hx:%04hx) %u.",
  288. mask_in_place,
  289. regval & mask_in_place,
  290. prd->regno);
  291. if (special_field(prd->regno, pdesc, regval)) {
  292. }
  293. else {
  294. if (pdesc->hi == pdesc->lo)
  295. printf("%2u ", pdesc->lo);
  296. else
  297. printf("%2u-%2u", pdesc->hi, pdesc->lo);
  298. printf(" = %5u %s",
  299. (regval & mask_in_place) >> pdesc->lo,
  300. pdesc->name);
  301. }
  302. printf("\n");
  303. }
  304. printf("\n");
  305. }
  306. /* Special fields:
  307. ** 0.6,13
  308. ** 0.8
  309. ** 2.15-0
  310. ** 3.15-0
  311. ** 4.4-0
  312. ** 5.4-0
  313. */
  314. static int special_field(
  315. ushort regno,
  316. MII_field_desc_t * pdesc,
  317. ushort regval)
  318. {
  319. if ((regno == 0) && (pdesc->lo == 6)) {
  320. ushort speed_bits = regval & PHY_BMCR_SPEED_MASK;
  321. printf("%2u,%2u = b%u%u speed selection = %s Mbps",
  322. 6, 13,
  323. (regval >> 6) & 1,
  324. (regval >> 13) & 1,
  325. speed_bits == PHY_BMCR_1000_MBPS ? "1000" :
  326. speed_bits == PHY_BMCR_100_MBPS ? "100" :
  327. speed_bits == PHY_BMCR_10_MBPS ? "10" :
  328. "???");
  329. return 1;
  330. }
  331. else if ((regno == 0) && (pdesc->lo == 8)) {
  332. printf("%2u = %5u duplex = %s",
  333. pdesc->lo,
  334. (regval >> pdesc->lo) & 1,
  335. ((regval >> pdesc->lo) & 1) ? "full" : "half");
  336. return 1;
  337. }
  338. else if ((regno == 4) && (pdesc->lo == 0)) {
  339. ushort sel_bits = (regval >> pdesc->lo) & pdesc->mask;
  340. printf("%2u-%2u = %5u selector = %s",
  341. pdesc->hi, pdesc->lo, sel_bits,
  342. sel_bits == PHY_ANLPAR_PSB_802_3 ?
  343. "IEEE 802.3" :
  344. sel_bits == PHY_ANLPAR_PSB_802_9 ?
  345. "IEEE 802.9 ISLAN-16T" :
  346. "???");
  347. return 1;
  348. }
  349. else if ((regno == 5) && (pdesc->lo == 0)) {
  350. ushort sel_bits = (regval >> pdesc->lo) & pdesc->mask;
  351. printf("%2u-%2u = %u selector = %s",
  352. pdesc->hi, pdesc->lo, sel_bits,
  353. sel_bits == PHY_ANLPAR_PSB_802_3 ?
  354. "IEEE 802.3" :
  355. sel_bits == PHY_ANLPAR_PSB_802_9 ?
  356. "IEEE 802.9 ISLAN-16T" :
  357. "???");
  358. return 1;
  359. }
  360. return 0;
  361. }
  362. char last_op[2];
  363. uint last_data;
  364. uint last_addr_lo;
  365. uint last_addr_hi;
  366. uint last_reg_lo;
  367. uint last_reg_hi;
  368. static void extract_range(
  369. char * input,
  370. unsigned char * plo,
  371. unsigned char * phi)
  372. {
  373. char * end;
  374. *plo = simple_strtoul(input, &end, 16);
  375. if (*end == '-') {
  376. end++;
  377. *phi = simple_strtoul(end, NULL, 16);
  378. }
  379. else {
  380. *phi = *plo;
  381. }
  382. }
  383. /* ---------------------------------------------------------------- */
  384. int do_mii (cmd_tbl_t * cmdtp, int flag, int argc, char *argv[])
  385. {
  386. char op[2];
  387. unsigned char addrlo, addrhi, reglo, reghi;
  388. unsigned char addr, reg;
  389. unsigned short data;
  390. int rcode = 0;
  391. char *devname;
  392. #ifdef CONFIG_8xx
  393. mii_init ();
  394. #endif
  395. /*
  396. * We use the last specified parameters, unless new ones are
  397. * entered.
  398. */
  399. op[0] = last_op[0];
  400. op[1] = last_op[1];
  401. addrlo = last_addr_lo;
  402. addrhi = last_addr_hi;
  403. reglo = last_reg_lo;
  404. reghi = last_reg_hi;
  405. data = last_data;
  406. if ((flag & CMD_FLAG_REPEAT) == 0) {
  407. op[0] = argv[1][0];
  408. if (strlen(argv[1]) > 1)
  409. op[1] = argv[1][1];
  410. else
  411. op[1] = '\0';
  412. if (argc >= 3)
  413. extract_range(argv[2], &addrlo, &addrhi);
  414. if (argc >= 4)
  415. extract_range(argv[3], &reglo, &reghi);
  416. if (argc >= 5)
  417. data = simple_strtoul (argv[4], NULL, 16);
  418. }
  419. /* use current device */
  420. devname = miiphy_get_current_dev();
  421. /*
  422. * check info/read/write.
  423. */
  424. if (op[0] == 'i') {
  425. unsigned char j, start, end;
  426. unsigned int oui;
  427. unsigned char model;
  428. unsigned char rev;
  429. /*
  430. * Look for any and all PHYs. Valid addresses are 0..31.
  431. */
  432. if (argc >= 3) {
  433. start = addrlo; end = addrhi;
  434. } else {
  435. start = 0; end = 31;
  436. }
  437. for (j = start; j <= end; j++) {
  438. if (miiphy_info (devname, j, &oui, &model, &rev) == 0) {
  439. printf("PHY 0x%02X: "
  440. "OUI = 0x%04X, "
  441. "Model = 0x%02X, "
  442. "Rev = 0x%02X, "
  443. "%3dbaseT, %s\n",
  444. j, oui, model, rev,
  445. miiphy_speed (devname, j),
  446. (miiphy_duplex (devname, j) == FULL)
  447. ? "FDX" : "HDX");
  448. } else {
  449. puts ("Error reading info from the PHY\n");
  450. }
  451. }
  452. } else if (op[0] == 'r') {
  453. for (addr = addrlo; addr <= addrhi; addr++) {
  454. for (reg = reglo; reg <= reghi; reg++) {
  455. data = 0xffff;
  456. if (miiphy_read (devname, addr, reg, &data) != 0) {
  457. printf(
  458. "Error reading from the PHY addr=%02x reg=%02x\n",
  459. addr, reg);
  460. rcode = 1;
  461. } else {
  462. if ((addrlo != addrhi) || (reglo != reghi))
  463. printf("addr=%02x reg=%02x data=",
  464. (uint)addr, (uint)reg);
  465. printf("%04X\n", data & 0x0000FFFF);
  466. }
  467. }
  468. if ((addrlo != addrhi) && (reglo != reghi))
  469. printf("\n");
  470. }
  471. } else if (op[0] == 'w') {
  472. for (addr = addrlo; addr <= addrhi; addr++) {
  473. for (reg = reglo; reg <= reghi; reg++) {
  474. if (miiphy_write (devname, addr, reg, data) != 0) {
  475. printf("Error writing to the PHY addr=%02x reg=%02x\n",
  476. addr, reg);
  477. rcode = 1;
  478. }
  479. }
  480. }
  481. } else if (strncmp(op, "du", 2) == 0) {
  482. ushort regs[6];
  483. int ok = 1;
  484. if ((reglo > 5) || (reghi > 5)) {
  485. printf(
  486. "The MII dump command only formats the "
  487. "standard MII registers, 0-5.\n");
  488. return 1;
  489. }
  490. for (addr = addrlo; addr <= addrhi; addr++) {
  491. for (reg = reglo; reg < reghi + 1; reg++) {
  492. if (miiphy_read(devname, addr, reg, &regs[reg]) != 0) {
  493. ok = 0;
  494. printf(
  495. "Error reading from the PHY addr=%02x reg=%02x\n",
  496. addr, reg);
  497. rcode = 1;
  498. }
  499. }
  500. if (ok)
  501. MII_dump_0_to_5(regs, reglo, reghi);
  502. printf("\n");
  503. }
  504. } else if (strncmp(op, "de", 2) == 0) {
  505. if (argc == 2)
  506. miiphy_listdev ();
  507. else
  508. miiphy_set_current_dev (argv[2]);
  509. } else {
  510. printf("Usage:\n%s\n", cmdtp->usage);
  511. return 1;
  512. }
  513. /*
  514. * Save the parameters for repeats.
  515. */
  516. last_op[0] = op[0];
  517. last_op[1] = op[1];
  518. last_addr_lo = addrlo;
  519. last_addr_hi = addrhi;
  520. last_reg_lo = reglo;
  521. last_reg_hi = reghi;
  522. last_data = data;
  523. return rcode;
  524. }
  525. /***************************************************/
  526. U_BOOT_CMD(
  527. mii, 5, 1, do_mii,
  528. "mii - MII utility commands\n",
  529. "device - list available devices\n"
  530. "mii device <devname> - set current device\n"
  531. "mii info <addr> - display MII PHY info\n"
  532. "mii read <addr> <reg> - read MII PHY <addr> register <reg>\n"
  533. "mii write <addr> <reg> <data> - write MII PHY <addr> register <reg>\n"
  534. "mii dump <addr> <reg> - pretty-print <addr> <reg> (0-5 only)\n"
  535. "Addr and/or reg may be ranges, e.g. 2-7.\n"
  536. );
  537. #endif /* CONFIG_TERSE_MII */
  538. #endif /* CFG_CMD_MII */